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Modified Combined-Step-Size Affine Projection Sign Algorithms for Robust Adaptive Filtering in Impulsive Interference Environments

机译:用于脉冲干扰环境中强大的自适应滤波的修改的组合梯级仿射投影标志算法

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摘要

In this paper, to further improve the filtering performance and enhance the poor tracking capability of the conventional combined step-size affine projection sign algorithm (CSS-APSA) in system identification, we propose a simplified CSS-APSA (SCSS-APSA) by applying the first-order Taylor series expansion to the sigmoidal active function (of which the independent variable is symmetric) of CSS-APSA. SCSS-APSA has lower computational complexity, and can achieve comparable, or even better filtering performance than that of CSS-APSA. In addition, we propose a modification of the sigmoidal active function. The modified sigmoidal active function is a form of scaling transformation based on the conventional one. Applying the modified function to the CSS-APSA, we can obtain the modified CSS-APSA (MCSS-APSA). Moreover, the extra parameter of MCSS-APSA provides the power to accelerate the convergence rate of CSS-APSA. Following the simplification operations of SCSS-APSA, the computational complexity of MCSS-APSA can also be reduced. Therefore, we get the simplified MCSS-APSA (SMCSS-APSA). Simulation results demonstrate that our proposed algorithms are able to achieve a faster convergence speed in system identification.
机译:在本文中,为了进一步提高滤波性能并增强系统识别中传统组合阶梯级仿射投影符号算法(CSS-APSA)的差的跟踪能力,我们通过应用提出了简化的CSS-APSA(SCSS-APSA) CSS-APSA的符合泰勒串联扩展到CSS-APSA的SigmoidAl活动函数(其中独立变量是对称的)。 SCSS-APSA具有较低的计算复杂性,并且可以实现比CSS-APSA的更好或更好的过滤性能。此外,我们提出了一种修改Sigmoider活性功能。修改的S形主动功能是基于传统的缩放变换形式。将修改后的函数应用于CSS-APSA,我们可以获取修改后的CSS-APSA(MCSS-APSA)。此外,MCSS-APSA的额外参数提供了加速CSS-APSA的收敛速率的功率。在SCSS-APSA的简化操作之后,也可以减少MCSS-APSA的计算复杂性。因此,我们得到了简化的MCSS-APSA(SMCSS-APSA)。仿真结果表明,我们所提出的算法能够在系统识别中实现更快的收敛速度。

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